Perforator Mapping

Perforator mapping is the process of locating and characterizing small blood vessels, called perforators, that connect a source artery to the skin and underlying tissue; it is important for planning tissue-preserving reconstructive surgery. Clinicians use color Doppler ultrasonography, computed tomography angiography, magnetic resonance angiography, or handheld Doppler devices to assess perforator position, caliber, course, and blood flow before surgery. In medicine, this information guides the design and elevation of perforator flaps, helping surgeons select reliable vessels while sparing muscle and reducing donor-site injury. Accurate mapping can improve flap perfusion, operative planning, and reconstruction of complex wounds after trauma, cancer treatment, or congenital conditions.

Perforator Mapping - Related Videos

Education

JoVE Core - Medical-Surgical Nursing

Esophageal Perforation-I: Introduction

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2025

Esophageal perforation is a severe medical condition characterized by a breach in the integrity of the esophageal wall. This breach can occur due to various factors such as trauma, medical procedures, or underlying diseases. When the esophageal wall is compromised, it allows food, fluids, and digestive juices into the chest cavity or adjacent structures, leading to potential complications and health risks. The location of esophageal perforation can vary, occurring anywhere along the esophagus.

Research

JoVE EoE - Neuropathology

Induction of a Subarachnoid Hemorrhage in a Mouse Model through Endovascular Perforation

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2025

The video demonstrates the induction of subarachnoid hemorrhage via endovascular perforation in a mouse model. An incision is made in the neck region of the anesthetized mouse to access the common carotid artery and its bifurcation. A filament is inserted through the arteries to perforate an intracranial artery branch, inducing subarachnoid hemorrhage.

Perforated Patch-Clamp Recording of Olfactory Sensory Neurons in Mice

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2025

This video demonstrates electrophysiological recording of olfactory sensory neurons (OSNs) in mice using a perforated patch-clamp technique. The olfactory epithelium, containing OSNs with fluorophore-tagged odor receptors, is isolated from a mouse and secured in a recording chamber. A recording pipette is clamped to the dendritic knob of an OSN, and nystatin within the pipette perforates the membrane to form electrical connectivity with the cell. Finally, another pipette is used to deliver an...

Fate Mapping

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2023

Fate mapping is a technique used to understand how embryonic cells divide, differentiate, and migrate during development. In classic fate mapping experiments, cells in different areas of an embryo are labeled with a chemical dye and then tracked to determine which tissues or structures they form. Technological improvements now allow for individual cells to be marked and traced throughout embryonic development and adulthood. This video reviews the concepts behind fate mapping, and then details a...

Perforated Patch-Clamp Recordings of Inner Ear Sensory Neuron Cell Bodies

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2025

This video demonstrates the patch-clamp technique for measuring ionic currents in inner ear sensory neuron cell bodies. It details the preparation and use of a polished patch-clamp pipette filled with an internal solution containing amphotericin B, which perforates the membrane to allow ion movement while preserving intracellular conditions. Voltage pulses are applied to trigger and record ion channel activity, providing insights into their properties and behavior.

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